4.7 Article

THREE-DIMENSIONAL PROMINENCE-HOSTING MAGNETIC CONFIGURATIONS: CREATING A HELICAL MAGNETIC FLUX ROPE

Journal

ASTROPHYSICAL JOURNAL
Volume 780, Issue 2, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/780/2/130

Keywords

magnetohydrodynamics (MHD); Sun: corona; Sun: filaments, prominences

Funding

  1. KU Leuven [GOA/2009/009]
  2. EC [263340]
  3. Interuniversity Attraction Poles Programme
  4. Belgian Science Policy Office [IAP P7/08 CHARM]
  5. Hercules foundation
  6. Flemish government
  7. National Natural Science Foundation of China (NSFC) [11203014, 10933003]
  8. 973 project [2011CB811402]

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The magnetic configuration hosting prominences and their surrounding coronal structure is a key research topic in solar physics. Recent theoretical and observational studies strongly suggest that a helical magnetic flux rope is an essential ingredient to fulfill most of the theoretical and observational requirements for hosting prominences. To understand flux rope formation details and obtain magnetic configurations suitable for future prominence formation studies, we here report on three-dimensional isothermal magnetohydrodynamic simulations including finite gas pressure and gravity. Starting from a magnetohydrostatic corona with a linear force-free bipolar magnetic field, we follow its evolution when introducing vortex flows around the main polarities and converging flows toward the polarity inversion line near the bottom of the corona. The converging flows bring the feet of different loops together at the polarity inversion line, where magnetic reconnection and flux cancellation happen. Inflow and outflow signatures of the magnetic reconnection process are identified, and thereby the newly formed helical loops wind around preexisting ones so that a complete flux rope grows and ascends. When a macroscopic flux rope is formed, we switch off the driving flows and find that the system relaxes to a stable state containing a helical magnetic flux rope embedded in an overlying arcade structure. A major part of the formed flux rope is threaded by dipped field lines that can stably support prominence matter, while the total mass of the flux rope is in the order of 4-5x10(14) g.

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